论文标题
在过渡金属二甲藻元化杂质中的光驱动磁转换
Light driven magnetic transitions in transition metal dichalcogenide heterobilayers
论文作者
论文摘要
由于最近围绕着扭曲过渡金属二甲化物(TMD)多层系统的物理学的兴奋,我们研究了在光的影响下TMD杂波的相关阶段。我们考虑波导光和圆形极化光。前者允许纵向极化的光,在高频限制下,可以在紧密结合模型中选择性地修改层间跳。我们基于准脱位扰动理论争论,可以将变化对层间跳的变化作为对连续模型中Moiré电位强度的调制。因此,波导光可用于在无数不同的磁相之间驱动过渡,包括从$ 120^\ circ $ neel阶段到条纹有序的磁相的过渡,或从旋转密度波相到顺磁性相。当系统受到循环极化的光线时,我们发现活性TMD层的有效质量通过施加的电磁场修饰。通过同时将波导的光和圆形偏振光应用到系统中,一个人可以高水平控制在原位的相图中。最后,我们评论了Floquet状态准备的实验性可行性,并认为当系统与明智选择的浴室耦合时,它在可用技术的范围内。
Motivated by the recent excitement around the physics of twisted transition metal dichalcogenide (TMD) multilayer systems, we study strongly correlated phases of TMD heterobilayers under the influence of light. We consider both waveguide light and circularly polarized light. The former allows for longitudinally polarized light, which in the high frequency limit can be used to selectively modify interlayer hoppings in a tight-binding model. We argue based on quasi-degenerate perturbation theory that changes to the interlayer hoppings can be captured as a modulation to the strength of the moiré potential in a continuum model. As a consequence, waveguide light can be used to drive transitions between a myriad of different magnetic phases, including a transition from a $120^\circ$ Neel phase to a stripe ordered magnetic phase, or from a spin density wave phase to a paramagnetic phase, among others. When the system is subjected to circularly polarized light we find that the effective mass of the active TMD layer is modified by an applied electromagnetic field. By simultaneously applying waveguide light and circularly polarized light to a system, one has a high level of control in moving through the phase diagram in-situ. Lastly, we comment on the experimental feasibility of Floquet state preparation and argue that it is within reach of available techniques when the system is coupled to a judiciously chosen bath.